首页> 外文会议>International Symposium on Advanced Optical Manufacturing and Testing Technologies; 20051102-05; Xian(CN) >New developments in the Precessions process for manufacturing free-form, large-optical, and precision-mechanical surfaces
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New developments in the Precessions process for manufacturing free-form, large-optical, and precision-mechanical surfaces

机译:旋进工艺中用于制造自由曲面,大光学曲面和精密机械曲面的新进展

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The recent upsurge in the demand for off-axis and complex "freeform" optical surfaces is driving the development of novel processes for their fabrication. This paper focuses on recent developments of the Precessions CNC polishing process for freeform surfaces, including off-axis as a special case. First, the surface-prescription and metrology-data, and their relation to the data-input for the polishing machines, are considered. The relevance of consistent coordinate frames is emphasised. An outline of how the process can 'polish' a ground freeform part (improve the texture), and then 'figure' the part (reduce the form errors) is given. Specific experimental case-studies are then presented, illustrating the versatility of the process on different materials and forms. Recent work is included in which the process-speed has been moderated in order to remove tens of nanometres of stock material, rather then the more usual hundreds of nanometres to tens of microns as in the standard Precessions process. The relevance of this to improving the ultimate surface-precision that should be achievable by this method is described. As a final illustration, the potential of the process to the rapid fabrication of the hundreds to thousands of 1-2 metre class mirror segments required for extremely large telescopes is considered.
机译:近来对离轴和复杂的“自由形式”光学表面的需求激增,正推动着用于其制造的新颖工艺的发展。本文重点介绍了用于自由曲面的Precessions CNC抛光工艺的最新进展,其中包括离轴的特殊情况。首先,考虑表面处方和计量数据,以及它们与抛光机数据输入的关系。强调了一致的坐标系的相关性。概述了该过程如何“打磨”地面自由形状的零件(改善纹理),然后“成型”零件(减少形状误差)的概述。然后提供了具体的实验案例研究,说明了该过程在不同材料和形式上的多功能性。包括最近的工作,其中为了降低数十纳米的原料,已经降低了加工速度,而不是像标准进动工艺中那样更常用的数百纳米到数十微米。描述了这种方法与提高最终表面精度的相关性,该精度应通过该方法来实现。作为最后的说明,考虑了快速制造超大型望远镜所需的成百上千个1-2米级镜段的过程的潜力。

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